How many grams of sodium iodide, Nal, must be used to produce 90.2 g of iodine, 1₂?
mass:
g Nal

Answers

Answer 1

300 grams of sodium iodide, Nal, must be used to produce 90.2 g of iodine, I₂

Sodium iodide is the ionic compound formed from the chemical reaction of sodium metal and iodine

Here given data is

I₂ has the molar mass = 253.8g/mol

So how many moles of I₂ we want to produce = 90.2 g I₂ ×1mol I₂ /253.8g/mol = 0.35 mole of I₂

Then the conversion of NaI to I₂ are

2 NaI → 2Na + I₂

0.35 mole of I₂ × 2 mole of NaI/mole of I₂ = 2 mole of NaI are needed

covert this value into gram

2 mole of NaI ×150. g NaI / mole NaI = 300 gram NaI would be needed

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Related Questions

What is the physical state of caesium at 25 degrees?

Answers

Answer:

298k

Explanation:

because 298k is lower than 302k

Consider the reaction: A+B---->2C. If 0.80 moles of C are formed, how many moles of A have been consumed by the reaction?

Answers

Answer:

0.40 mole of A

Explanation:

1 mole of A to produce 2 moles of C

so the number of mole of A to produce 0.80 mole of C is:

(0.80 x 1)/(2) = 0.40 mole

What volume of does 1.24grams of flourine gas occupy under conditions of 5.20 celcius and 2.04atm?

Answers

Volume the fluorine gas occupies = 0.73L

What is volume of a gas ?

The gas's volume:

The area occupied by gaseous particles under normal temperature and pressure circumstances is referred to as the volume of gas.

It is identified as a "V."

The letter "L" stands for "liters," the SI unit of volume.

At normal temperature, a mole of gas has a volume of 24 m3, or 24 000 cm3.

The molar volume of a gas is the name given to this quantity.

The gas equation

PV = n R T

P = pressure = 2.04 atm

T = temperature = 5.20 Celsius = 278.20K

V = volume

n = no of moles = 1.24/19 = 0.065moles

R = gas constant = 0.0821lit atm /K

V = 0.065*0.082*278.20/ 2.04 =  0.73L

Volume the fluorine gas occupies = 0.73L

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Are there substances in the lab that have bonds that are not strictly ionic, covalent, or metallic? Explain your answers.

Answers

Metallic bonds occur amid metal atoms. Whereas ionic bonds combine metals with non-metals, metallic bonding fixes several metal atoms.

What determines bond is ionic, covalent, or metallic?

An ionic bond is formed by joining a metal and a nonmetal, while a covalent bond is formed by allying two nonmetals. So we check the periodic table to see if our compound is made up of metals or nonmetals, or of two nonmetals.

Covalent compounds are built when two nonmetals react with each other. Since hydrogen is a nonmetal, binary compounds that carry hydrogen are also usually covalent compounds. Metallic elements produced compounds with non-metallic elements with the help of ionic bonds.

So we can conclude that In metals, the electrons leave the outer shells of metal atoms, devise positive metal ions and a 'sea' of delocalized electrons.

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Someone help, I don't understand this please.

Calculate the average atomic mass of magnesium, given the data in the table below. Show your work.

Magnesium - 24 / Mass 23.9850 / Percent Abundance 78.99%

Magnesium - 25 / Mass 24.9859 / Percent Abundance 10.00%

Magnesium - 25 / Mass 25.9825 / Percent Abundance 11.01%

Answers

Answer:

24.984466667

Explanation:

add all mass values and divide by amount (3)

It's 100 degrees outside today. You forgot your nearly full water bottle in the car when you went into the store. When you return later, you open the water bottle and it makes a "hissing" sound. Explain why this occurs. In your response, discuss what is happening with the water molecules and how thermal energy is changing.

Answers

The hissing sound from the water bottle occurred due to increase in thermal energy of the car which is the immediate environment of the water bottle.

What is thermal energy?

Thermal energy is defined as the type of energy that expresses the flow of heat through a medium.

When there is increase in heat energy, outside the an enclosed medium such as a car, all the contents within the medium also increases in temperature.

There is also a rise in temperature of water in the water bottle and this causes the water molecules to gain energy, vibrate and collide more often among each other.

The hissing sound occurs due to a rise in pressure of the water occuring due to rise in temperature.

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2. If a solid dissolves in the liquid, sedimentation and decantation method cannot be used.Why?

Answers

Answer:

The answer is if a solid gets dissolved in a liquid then sedimentation and decantation cannot be used because these methods are used to separate an insoluble solid substance but if we add a little sugar or salt it will dissolve in the liquids it is soluble solid making it hard to separate.

Explanation:

I hope this helps

What is the equilibrium constant K at 25 °C for an electrochemical cell when E° = +0.0165 V and n = 2?(F = 96,500 J/(V・mol), R = 8.314 J/(mol・K))

Answers

The equilibrium constant K of the electrochemical cell is 2.976.

What is equilibrium constant ?

The equilibrium constant of a chemical reaction is described as the value of its reaction quotient at chemical equilibrium, a state approached by a dynamic chemical system after sufficient time has elapsed at which its composition has no measurable tendency towards further change.

We have that:

ΔG = -nFE°cell

n = 2

Force value = 96,500 J/(V・mol)

E°cell = +0.0140 V

ΔG = -(2 *  96,500  * 0.0140)

ΔG = -2702 J

Then,

But;

ΔG = -R TlnK

lnK = -(ΔG/RT)

The value of K = e^[-(ΔG/RT))

The value of K = e^[-(( -2702)/8.314 * 298]

The value of K = 2.976

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A 1.50 g of urea/cholesterol mixture was added to 25.0 mL of water to separate the two compounds. The solid sample collected after filtration is 0.52. What is the % of urea in the sample

Answers

Based on the mass of the sample, the percentage mass of urea in the urea/cholesterol mixture is 65.3%.

What is the percentage of urea in the urea/cholesterol mixture?

The percentage mass of urea in the urea/cholesterol mixture is determined using the formula below:

Percentage of urea  = (mass of urea in sample/mass of sample) * 100%

The mass of urea in the sample is obtained using the formula below:

Mass of urea = mass of sample - mass of cholesterol

During the separation procedure of the mixture, urea which is soluble in water goes into the solvent phase whereas cholesterol is obtained as a solid.

Hence, the 0.52 g solid sample collected is cholesterol.

mass of urea = 1.50 - 0.52

mass of urea = 0.98

Percentage urea = 0.98/1.5 * 100%

Percentage mass of urea = 65.3%

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Meghan is baking cookies. When she turns the oven on, she notices that the heating coils in the back of the oven start to glow orange. As she opens the oven to place the cookie sheet on the oven rack, she can feel the warmth from the oven. She watches the cookies puff up and turn a golden brown. Read the paragraph that describes energy as Meghan bakes. Choose the word that correctly completes each sentence. Baking cookies in the oven is an example of how energy is . Electrical energy is neither or . Thermal energy either from one object to another as it is transferred or into a different form as it is transformed.

Answers

1. Baking cookies in the oven is an example of how energy is conserved.

2. Electrical energy is neither transformed nor transferred.

3. Thermal energy either moves from one object to another as it is transferred or changes into a different form as it is transformed.

Baking is the process of cooking with dry heat, particularly in an oven. It is most likely the oldest type of cooking. Bakery goods including bread, rolls, cookies, pies, pastries, and muffins are typically made with flour or meal that comes from grains of some kind.

The stages of the ingredients originally start out in distinct states (e.g., flour is solid, eggs are liquid, etc.), and they change several times as the cookies bake. When they are combined to create cookie dough, a state known as a colloid results (like a mix between solid and liquid). Eventually, the cookies reach a solid state when baking is.

Thus, Baking cookies in the oven is an example of how energy is conserved . Electrical energy is neither transferred or transformed . Thermal energy either moves from one object to another as it is transferred or changes into a different form as it is transformed.

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Please help me


Is this reaction endothermic or endothermic?

CIO + O - CI + O^2

Answers

This reaction, CIO + O - CI + O2, is an example of an endothermic chemical reaction, where the reactants take heat energy from their environment and use it to create products.

Explanation of endothermic?

Endothermic chemical reactions occur when the reactants take in heat energy from their environment to create products. A cooling effect is produced by these reactions because they cause their surroundings to become cooler.

How are endothermic and exothermic different?

Exothermic means that the chemical reaction releases energy. In exothermic reactions, bonds are broken in the reactants, but more energy is released when the bonds are broken in the products. Endothermic chemical processes are those that take up (or utilize) energy.

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Convert the boiling temperature of liquid ammonia, −28.1 °F, into degrees Celsius and Kelvin. Show the calculations.

Answers

-28.1 °F is a temperature in Fahrenheit and is converted to degrees Celsius and Kelvin as follows:

-33.39°C239.76K

How to convert Fahrenheit to Kelvins?

Temperature is the measure of cold or heat, often measurable with a thermometer.

Temperature can be measured in the following units;

Kelvins (absolute temperature)

Degrees Celsius (°C)Degrees Fahrenheit (°F)

Kelvins (K) is the international system of units (S.I unit), the base unit of thermodynamic temperature; 1⁄273 of the thermodynamic temperature of the triple point of water.

Degrees Celsius is the metric unit of temperature, a derived unit of the International System of Units.

°F is converted to °C as follows:

(32°F − 32) × 5/9 = 0°C

-28.1°F = -33.39°C

°F is converted to K as follows:

(-28.1°F − 32) × 5/9 + 273.15 = 239.761K

= 239.76K

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Which of the following is involved in bonding between atoms?
Select one:
O a. neutrons
O b. protons
O c. electrons
O d. the nucleus

Answers

The following is involved in bonding between atoms is electron

There are four type of chemical bonds essential for life to exist and it is ionic bond, covalent bond, hydrogen bond, and Vander wall interaction and all of these are different kind of bond to play various role in biochemical interaction and the electron on the outermost energy level of the atom are called valence electron and the valence electron are involved in bonding one atom yo another

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What is the coefficient of HCl when the equation is balanced with smallest whole numbers?
MnO2 + HCl → MnCl2 + Cl2 + H2O
3
2
4
8

Answers

4!
MnO2 + 4 HCl = MnCl2 + 2 H2O + Cl 2


How many molecules are in 30 g of CO2?

Answers

there is 0.68167 molecules in 30 grams of CO2

State the composition of the alloy to make rings

Answers

Explanation:

Write a short report describing your ideas for a school of the future. You can suggest changes to:

• school buildings and classrooms.

• the library

• the cafeteria

• how classes are taught.

Give a reason for each of your suggestions. Use a variety of synonyms and accurate vocabulary.

200 words only

18.00 g hydrated magnesium
sulfate is heated to drive off the
water, leaving 9.211 g MgSO4 solid.
What is the formula of the hydrate?

Answers

The formula of the hydrate would be  [tex]MgSO_4.6H_2O[/tex].

Deducing the formula of a hydrate salt

In order to get the formula of the hydrated salt, the empirical formula method can be used to know the mole of the salt and that of the water.

The formula of magnesium sulfate = [tex]MgSO_4[/tex]

The formula of water = [tex]H_2O[/tex]

Mass of hydrated magnesium sulfate = 18.00 g

Mass of anhydrous magnesium salt = 9.211g

Mass of water = 18 - 9.211

                      = 8.789 g

Now, let's find the mole equivalent of each component:

Molar mass of magnesium sulfate = 120.366 a/mol

Molar mass of water = 18.01 g/mol

Mole of magnesium sulfate anhydrous = 9.211/120.366

                                                                 = 0.0765 mole

Mole of water = 8.789/18.01

                       = 0.4880 mole

Now, let's divide by the lowest mole:

Magnesium sulfate = 0.0765/0.0765

                                 = 1

Water = 0.4880/0.0765

           = 6.37

Thus, the mole ratio of magnesium sulfate and water of hydrate is 6 to 1. Therefore, the formula of the hydrated salt would be [tex]MgSO_4.6H_2O[/tex].

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For electromagnetic radiation with a wavelength of 839.6 nm: (a) What is the frequency of the radiation (in s-1)? (b) What is the energy (in J) of one photon of the radiation? (c) What is the energy (in kJ) of one mole of photons of the radiation?

Answers

The frequency of the photon is 3.57 * 10^14 Hz. the energy in joules is 2.4 * 10^-19 J while the energy in kJ/mol is 3.9 * 10^-40 kJ/mol.

What is the energy?

The energy of the photon can be obtained by the use of an adaptation of the Plank equation. Let us now use;

E = hc/λ

E = energy

h = Plank Constant

c = Speed of light

λ = wavelength

a)

c = λf

f = c/λ

Substituting values;

f = 3 * 10^8/839.6 * 10^-9

f = 3.57 * 10^14 Hz

b)

E = 6.6 * 10^-34 * 3 * 10^8/ 839.6 * 10^-9

E = 2.4 * 10^-19 J

c)

Energy in kJ/mole

Substituting values;

2.4 * 10^-19 J * 10^3/6.02 * 10^23

= 3.9 * 10^-40 kJ/mol

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A sample of a concentrated hydrochloric acid is 11.8Molarity and has a density 1.19 gram per mili liter calculate the mass percentage of HCl?​

Answers

The mass percentage of HCl 11,900x/118 g and molality of solution is   9.915 mol L^-1.

Molarity = 11.8 M

Molarity = (moles of HCl) / (litres of solution)

Molality = (moles of HCl) / (kilograms of solvent)

=> Let number of moles of HCl present be x moles.

So, 11.8 = x/litres of solution

litres of solution = x/11.8 litres.

So, volume in mL = x/11.8 * 1000 mL =>10,000x/118 mL

Density of solution = 1.19 g/ml

So, D = m/v

Mass of solution = D * v => 1.19 * 10,000x/118 => 11,900x/118 g

=> (11,900x/118)/1000 L => 11.9x/118 litres

Moles of HCl = x moles.

Molality = x/( 11.9x/118)

=> 118x/11.9x => 118/11.9 => 9.9156 mol L-1

=> Molality of solution = 9.915 mol L-1 (approx.)

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At 125 °C a gas has a volume of 145 mL. What will the volume be at 25.0 °C ?

Answers

If a gas has a volume of 145 mL at 125 °C, then it will have 108.56 mL at 25 °C.

According to Charles’ law, the volume of a gas is directly proportional to the temperature.

Thus, V1/T1=V2/T2 .......(i)

Here, V1 ⇒ initial volume

T1  ⇒ initial temperature in Kelvin

V2 ⇒ final volume

T2 ⇒ final temperature in Kelvin.

In the given question:

V1 = 145mL

T1 = 125°C= (125+273)K= 398K

T2 = 25°C= (25+273)K= 298K

Putting these values in equation (i),

145mL / 398K = V2 / 298K

Solving for V2, we get

V2 = 145mL * 298K /398 K

V2 = 108.56 mL

Therefore, at 25 °C, the gas will have a volume of 108.56 mL.

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Which force slows a skateboard when a skateboarder puts a foot down to brake?
O motion
O gravity
O friction
O inertia

Answers

Answer:

It is definitely friction

Friction 100% need to write more bc not 20 letters

What is the atomic radius of Br?

84pm
140pm
60pm
117pm

Answers

Answer:

The answer is 117.

Explanation:

There’s not really a way to calculate atomic radius. It comes from empirical data and is in the periodic table. The only way I can think of is Bohr’s radius constant.

₀ = 4₀(ℎ bar)²/_e (_e)²

Calculating atomic radius can get complicated so it’s best to leave it at this.

nasa measured the frequency of a cosmic ray emission to be 2.3 x 10^24 Hz. what is the wavelength in nm of this cosmic ray

Answers

The wavelength of the cosmic ray when the frequency is 2.3 x 10^24 Hz is 1.304 x 10^-7 nm.

What is wavelength?

Wavelength in a wave is the distance between any given point on a wave and the same point on the adjacent wave that is crest to crest or trough to trough. It can be measured in the direction of the given wave.

The wavelength in nm of the cosmic ray can be calculated as,

λ = c / ν

where λ is the wavelength, ν is frequency in Hz or s^-1 and c is velocity of light.

λ = (3 x 10^8 m/s) / 2.3 x 10^24 Hz = 1.304 x 10^-16 m = 1.304 x 10^-7 nm.

Therefore, the wavelength of the cosmic ray when the frequency is 2.3 x 10^24 Hz is 1.304 x 10^-7 nm.

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Avogadro's constant is the same as the number of
a. magnesium atoms in 24g of magnesium
b. nitrogen molecules in 14g of nitrogen
c. copper II sulfate formula units in 160g of copper II sulfate

Answers

Avogadro's constant is the same as the number of copper II sulfate formula units in 160g of copper II sulfate; option C.

What is Avogadro's constant?

Avogadro's constant is a number that describes the number of particles in 1 mole of a substance.

The value of the Avogadro constant is 6.02 * 10²³.

The carbon-12 isotope is used as the standard to define the mole of a substance.

12 grams of the carbon-12 isotope contains the Avogadro number of particles which is equal to 6.02 * 10²³.

Hence, 1 mole of a substance is defined as the amount of a substance that contains as many elementary particles as there are in 12 grams of carbo-12.

Considering the given substances:

a. 24g of magnesium off magnesium contains two moles of magnesium atoms.

b. 14g of nitrogen gas contains 0.5 moles of nitrogen gas molecules

c. 160g of copper (ii) sulfate contains 1 mole of copper (ii) sulfate formula units. Hence, this is equal to the  Avogadro constant

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What mass of magnesium bromide is formed when 1.00 g of magnesium reacts with 5.00 g of bromine? Mg + Br2 MgBr2

Answers

From the mole ratio of the reaction, the mass of magnesium bromide formed when 1.00 g of magnesium reacts with 5.00 g of bromine is 2.88 g.

What is the mole ratio of the reaction between magnesium and bromine to form magnesium bromide?

The mole ratio of the reaction between magnesium and bromine to form magnesium bromide is found in the equation of the reaction.

The equation of reaction is given below as follows:

Mg + Br₂₂---> MgBr₂

Mole ratio of magnesium to bromine is 1 : 1

Moles of magnesium reacting = 1 / 24 moles

Moles of magnesium = 0.0416

Moles of bromine reacting = 5 / 180

moles of bromine reacting = 0.0277 moles

Bromine is the limiting reactant

Mass of magnesium bromide formed = 0.0277 * 104 g

Mass of magnesium bromide formed = 2.88 g

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What is the specific heat of a 95.01 g piece of an unknown metal that exhibits a 45.2°C temperature change upon absorbing 1870 J of heat?

Answers

The specific heat of a 95.01 g piece of an unknown metal that exhibits a 45.2°C temperature change upon absorbing 1870 J of heat is 0.44J/g°C.

How to calculate specific heat?

The specific heat capacity of a metal can be calculated using the following:

Q = mc∆T

Where;

Q = quantity of heat absorbed or released (J)m = mass of substance (g)c = specific heat capacity∆T = change in temperature (°C)

According to this question, a 95.01 g piece of an unknown metal exhibits a 45.2°C temperature change upon absorbing 1870 J of heat. The specific heat capacity can be calculated as follows:

1870 = 95.01 × c × 45.2

1870 = 4294.452c

c = 0.44J/g°C

Therefore, 0.44J/g°C is the specific heat capacity of the metal.

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Which of the following alcohols is used in antifreeze?

ethylene glycol

glycerol

ethanol

isopropyl alcohol

Answers

Answer:

No entendí porfavor puedes explicarme

Can anyone help me in this question? (Q13 part A, B, and C)

Answers

Answer:

a. Yes, both W and Y have the same atomic number. Since the atomic mass equals the sum of protons (which is the atomic number) and neutrons, both W and Y have different numbers of neutrons, making them isotops of each other.

b. Both W and Y have the same atomic number, making both the same element. Therefore they have the same chemical properties.

c. W: 29 protons, 34 neutrons, 29 electrons

Y: 29 protons, 36 neutrons, 29 electrons

Explanation:

a. Yes, both W and Y have the same atomic number. Since the atomic mass equals the sum of protons (which is the atomic number) and neutrons, both W and Y have different numbers of neutrons, making them isotops of each other.

b. Both W and Y have the same atomic number, making both the same element. Therefore they have the same chemical properties.

c. W: 29 protons, 34 neutrons, 29 electrons

Y: 29 protons, 36 neutrons, 29 electrons

Remember: mass number = protons (atomic #) + neutrons

Communities often have disposal sites where people can safely dispose of medications, household cleaners and waste instead of pouring them down their sink drains.

How does this impact the environment?



reduces water pollution

reduces waste recycling

improves land conservation

reduces fossil fuel consumption

Answers

Having disposal sites where people can safely dispose of medications, household cleaners and waste instead of pouring them down their sink drains impacts the environment by reducing water pollution.

What is water pollution?

When chemicals contaminate water sources, the water in these water bodies becomes unsafe and harmful for use in drinking, cooking, cleaning, swimming, and other activities. This contamination of water bodies is called water pollution.Chemicals, waste, microorganisms, and parasites are examples of pollutants affecting the water bodies.

Pouring chemicals down the drain poses the most immediate risk of water pollution. Chemicals are harmful for consumption by all living things when they are dumped down the drain because of the effects they have on our rivers, lakes, streams, and other water supplies.

In regions where contamination is happening, human health might suffer, which can cause serious health problems. Animals and plants that are given contaminated water get sick and die, which has an impact on agriculture as well.

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A wave's frequency is 8.50x10^14 s-1. What is the wavelength?

Answers

Based on the given frequency of the wave, the wavelength of the wave is 3.75 * 10⁻⁷ m.

What is the relationship between the frequency and wavelength of a wave?

The frequency of a wave is the number of complete oscillations performed by the wave per second.

The wavelength is the distance between successive points on the wave.

The relationship between the wavelength and frequency of a wave is given below:

Wavelength = velocity / frequency

Assuming the given wave is an electromagnetic wave, the velocity of the wave is 3.0 * 10⁸ m/s

Wavelength = 3.0 * 10⁸ m/s / 8.50 * 10¹⁴ s⁻¹

Wavelength = 3.75 * 10⁻⁷ m

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